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Lesson 03 of 0930 minBeyond SKYWARN

The wall cloud, rotating and not

The feature spotters are most often looking for, its definition in full, and the three signals that decide whether it is worth a radio call.

By the end of this lesson
M4.3.aState the NWS definition of a wall cloud.
M4.3.bList the signals that make a wall cloud reportable: rotation, rapid vertical motion, persistence.
M4.3.cDistinguish a rotating from a non-rotating wall cloud.
M4.3.dLocate and identify a tail cloud.

The definition, in full

Four things in that paragraph do real work. Localized and persistent rule out the ragged lowering that appears for thirty seconds and dissolves. Inflow side places it: south or south-west, on the rear flank, under the updraft base, not out front on the The leading edge of cool air rushing out of a storm, ahead of the rain. It is what makes the wind pick up sharply just before a storm arrives.. Not all wall clouds rotate is the sentence most summaries drop. And a few minutes up to nearly an hour is the How long between a warning being issued and the severe weather arriving. Quoted two ways: counting only the warnings that beat the event, or averaging in the events nobody warned at all, which roughly halves it. you may be working with.

A dark, rounded lowering hangs beneath a storm base over open farmland, with a narrow cone-shaped tornado extending from it to the ground and a lighter slot cutting into the cloud base beside it
A localized, persistent lowering beneath the updraft base, on the rear inflow side of a storm, marking where air is being drawn up. Not all of them rotate, and a rotating one is what you report. near Alfalfa, Oklahoma, 22 May 1981. Compact, localized, hanging beneath the updraft base rather than out along a gust front. The bright slot cutting in beside it is lesson 4.Photo courtesy of NSSL, public domain, via SPC

What makes it reportable

A wall cloud is a feature. A rotating wall cloud is a report. Three signals, and you want more than one:

  1. Sustained rotation. Not one apparent turn. Persistent, in one direction, over a watching period. Lesson 7 is the technique for establishing this honestly.
  2. Rapid vertical motion. Cloud material visibly ripping upward into the base, often fastest where the A horizontal cloud reaching from the rain area toward the wall cloud, at about wall-cloud height, with its material moving toward the wall cloud. joins.
  3. Persistence. It is still there, and still doing both of the above, minutes later.

How often does a wall cloud become a tornado?

Nobody knows, and this course is not going to tell you. There is no defensible peer-reviewed conversion rate, and a precise-sounding percentage here is one of the things this material is specifically audited to keep out. What can be said is qualitative and comes from National Severe Storms LaboratoryA research laboratory, not an operational office. It develops the techniques forecasters use, but issues no products and takes no reports.: a wall cloud can exist for ten to twenty minutes before a tornado appears, but not always.

If you meet a figure for this in a class or a forum, ask what it cites. The honest answer is that most wall clouds do not produce tornadoes and the fraction that do has never been pinned down in a way that survives review.

The tail cloud

The motion is the identification. Cloud material moving out of the rain and into the lowering, accelerating upward where they meet, is rain-cooled air being ingested by the The column of rising air inside a storm. Everything a thunderstorm does, from hail to tornadoes, is downstream of how strong and how organised this is.. That is also, in one sentence, how a wall cloud forms.

Knowledge checkNot graded · the exam draws a fresh variant of this item

You watch a localized lowering under the updraft base for three minutes. It persists, but shows no rotation and no obvious vertical motion. What do you report?

The definition says something explicit about whether wall clouds rotate.
Sources for this lessonBranick, A Comprehensive Glossary of Weather Terms for Storm Spotters, NOAA Technical Memorandum NWS SR-145NWS Weather Spotter's Field Guide (YPA-201154, June 2011)NSSL Severe Weather 101, tornado basics and tornado typesSPC public domain tornado images, scanned from the NSSL storm intercept archive

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